Mutual synergistic protein folding in split intein

Inteins are intervening protein sequences that undergo self-excision from a precursor protein with the concomitant ligation of the flanking polypeptides. Split inteins are expressed in two separated halves, and the recognition and association of two halves are the first crucial step for initiating t...

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Main Authors: Yuchuan Zheng, Qin Wu, Chunyu Wang, Min‑qun Xu, Yangzhong Liu
Format: Article
Language:English
Published: Portland Press, Biochemical Society 2012-07-01
Series:Bioscience Reports
Subjects:
Online Access:http://www.bioscirep.org/bsr/032/0433/bsr0320433.htm
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spelling doaj-60c1ddc7e3fb4a53bd09e70b0b1b0b372020-11-24T21:15:21ZengPortland Press, Biochemical SocietyBioscience Reports0144-84631573-49352012-07-0132510.1042/BSR20120049Mutual synergistic protein folding in split inteinYuchuan ZhengQin WuChunyu WangMin‑qun XuYangzhong LiuInteins are intervening protein sequences that undergo self-excision from a precursor protein with the concomitant ligation of the flanking polypeptides. Split inteins are expressed in two separated halves, and the recognition and association of two halves are the first crucial step for initiating trans-splicing. In the present study, we carried out the structural and thermodynamic analysis on the interaction of two halves of DnaE split intein from Synechocystis sp. PCC6803. Both isolated halves (IN and IC) are disordered and undergo conformational transition from disorder to order upon association. ITC (isothermal titration calorimetry) reveals that the highly favourable enthalpy change drives the association of the two halves, overcoming the unfavourable entropy change. The high flexibility of two fragments and the marked thermodynamic preference provide a robust association for the formation of the well-folded IN/IC complex, which is the basis for reconstituting the trans-splicing activity of DnaE split intein.http://www.bioscirep.org/bsr/032/0433/bsr0320433.htmdisordered proteininteinNMR spectroscopyprotein folding
collection DOAJ
language English
format Article
sources DOAJ
author Yuchuan Zheng
Qin Wu
Chunyu Wang
Min‑qun Xu
Yangzhong Liu
spellingShingle Yuchuan Zheng
Qin Wu
Chunyu Wang
Min‑qun Xu
Yangzhong Liu
Mutual synergistic protein folding in split intein
Bioscience Reports
disordered protein
intein
NMR spectroscopy
protein folding
author_facet Yuchuan Zheng
Qin Wu
Chunyu Wang
Min‑qun Xu
Yangzhong Liu
author_sort Yuchuan Zheng
title Mutual synergistic protein folding in split intein
title_short Mutual synergistic protein folding in split intein
title_full Mutual synergistic protein folding in split intein
title_fullStr Mutual synergistic protein folding in split intein
title_full_unstemmed Mutual synergistic protein folding in split intein
title_sort mutual synergistic protein folding in split intein
publisher Portland Press, Biochemical Society
series Bioscience Reports
issn 0144-8463
1573-4935
publishDate 2012-07-01
description Inteins are intervening protein sequences that undergo self-excision from a precursor protein with the concomitant ligation of the flanking polypeptides. Split inteins are expressed in two separated halves, and the recognition and association of two halves are the first crucial step for initiating trans-splicing. In the present study, we carried out the structural and thermodynamic analysis on the interaction of two halves of DnaE split intein from Synechocystis sp. PCC6803. Both isolated halves (IN and IC) are disordered and undergo conformational transition from disorder to order upon association. ITC (isothermal titration calorimetry) reveals that the highly favourable enthalpy change drives the association of the two halves, overcoming the unfavourable entropy change. The high flexibility of two fragments and the marked thermodynamic preference provide a robust association for the formation of the well-folded IN/IC complex, which is the basis for reconstituting the trans-splicing activity of DnaE split intein.
topic disordered protein
intein
NMR spectroscopy
protein folding
url http://www.bioscirep.org/bsr/032/0433/bsr0320433.htm
work_keys_str_mv AT yuchuanzheng mutualsynergisticproteinfoldinginsplitintein
AT qinwu mutualsynergisticproteinfoldinginsplitintein
AT chunyuwang mutualsynergisticproteinfoldinginsplitintein
AT minx2011qunxu mutualsynergisticproteinfoldinginsplitintein
AT yangzhongliu mutualsynergisticproteinfoldinginsplitintein
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